Which solution will change litmus paper red?B) CH300 (aq)A) NaOH (aq)How many milliliters 0.100 M NaoH(aq) would be needed to compofB) 50.0 mLA) 300. mL
Which solution will change litmus paper red?B) CH300 (aq)A) NaOH - 1

Answers

Answer 1
Answer: None of the solutions will change the litmus paper to red. Normally, a litmus paper is colored blue and when acidic solution is present it will turn to red. Since the given choices are CH3OO- (Acetate Ion) and NaOH (Sodium Hydroxide) are both base.

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In the Bohr model of the atom, an electron in an orbit has a fixed ____.a. position
c. energy
b. color
d. size

Answers

In the Bohr model of the atom, an electron in an orbit has a fixed energy in which it revolves.

What is an atom?

An atom is defined as the smallest unit of matter which forms an element. Every form of matter whether solid,liquid , gas consists of atoms . Each atom has a nucleus which is composed of protons and neutrons and shells in which the electrons revolve.

The protons are positively charged and neutrons are neutral and hence the nucleus is positively charged. The electrons which revolve around the nucleus are negatively charged and hence the atom as a whole is neutral and stable due to presence of oppositely charged particles.

Atoms of the same element are similar as they have number of sub- atomic particles which on combination do not alter the chemical properties of the substances.

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The answer is C. an electron in an orbit has a fixed energy.

What is the name of H2S? A. sulfuric acid B. sulfurous acid C. hydrosulfurous acid D. hydrosulfuric acid

Answers

correct answer is D. Hydrosulfuric acid

100% sure.. mark as Brainliest please

Correct answer is D! Good luck!

Who was chosen to lead the Continental Army?A. Charles Cornwallis
B. Henry Knox
C. George Washington
D. Lord Howe

Answers

George Washington was chosen to lead the Continental Army.

Since Washington was a qualified and professional leader during the French and Indian Wars, they believed that he would make a terrific one for the Continental Army as well. Considering that he was given authority over such a weak and poor army, he somehow handled to force the British out of Boston in 1776 and soon closed the war by having victory at Yorktown in 1781.
C. George Washington was chosen to lead the Continental Army.
Hope this helps~

Chlorine has two naturally occuring isotopes - chlorine-35 and chlorine-37. Elaborate on how the atomic mass is determined given that chlorine-35 has an abundance of 75.78% and has a mass of 34.969 amu and that chlorine-37 has an abundance of 24.22% and a mass of 36.966 amu.

Answers

because the gmm for chlorine is 35.5 which is the average of all of those combined, so the percentages reflect how much of each isotope is needed to make the average that specific mass per mole

The molar mass of I2 is 253.80 g/mol, and the molar mass of NI3 is 394.71 g/mol. How many moles of I2 will form 3.58 g of NI3?

Answers

The balanced chemical reaction is:

N2 +3 I2 = 2NI3

We are given the amount of product formed. This will be the starting point of our calculations.

3.58 g NI3 ( 1 mol NI3 / 394.71 g NI3 ) ( 3 mol I2 / 2 mol NI3 ) = 0.014 mol I2.

Thus, 0.014 mol of I2 is needed to form the given amount of NI3.

Which quantity represents 0.500 Mole at STP

Answers

0.500 moles is roughly .5*6.022*10^23=3.011*10^23 atoms. This is independent of STP.

Final answer:

0.500 mole of any gas at standard temperature and pressure (STP) is equivalent to 11.2 liters. This is calculated using Avogadro's Law.

Explanation:

The quantity that represents 0.500 Mole at Standard Temperature and Pressure (STP) refers to the volume of gas. According to Avogadro's law, which states that equal volumes of gases at the same temperature and pressure contain an equal number of molecules, 1 mole of any gas at STP occupies a volume of 22.4 liters. Therefore, 0.500 mole of a gas at STP would occupy a volume of 11.2 liters.

Here's how you calculate this: Use Avogadro's law proportion, which is V1/n1 = V2/n2. Given n1 is 1 mole, V1 is 22.4 liters (which are standard values at STP) and n2 is 0.500 mole (your desired quantity), you can solve for V2 :

V2 = V1 * n2 / n1 = 22.4 L * 0.500 mol / 1 mol = 11.2 L.

So, 0.500 mole of any gas at STP would have a volume of 11.2 liters.

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